Povzetek

Single-process additive manufacturing provides fully functional 3D-printed structures in a single 3D printer without the need for additional manufacturing processes. The 3D-printed parts can be scaled, individualized, embedded, and combined into multi-functional structures without modifications to the fabrication technology. This manuscript reports the first demonstration of monolithically 3D-printed stacked dielectric actuators (SDEAs) in a single fabrication process utilizing a commercially accessible extrusion 3D printer and thermoplastic filaments. Neither single-layer nor stacked dielectric actuators have been 3D printed with thermoplastic filament extrusion in a single process until now. To achieve single-process fabrication, this research successfully addresses the main challenges: single-process fabrication of the dielectric layer and electrodes, repeatability and reliability of the 3D-printed thin dielectric layer, and layer stacking. Four actuators with different active areas and a number of stacked active layers were 3D printed. The functionality of the 3D-printed actuators was demonstrated with dynamic electromechanical characterization in a free-displacement and blocked-force configuration in a broad frequency range (up to 5 kHz). The actuators show promise for applications that require high-frequency resonators or high controllability in the sub-resonance region.

Ključne besede

dielectric actuators;fused-filament fabrication;dynamic operation;free displacement characterization;blocked force characterization;smart structures;

Podatki

Jezik: Angleški jezik
Leto izida:
Tipologija: 1.01 - Izvirni znanstveni članek
Organizacija: UL FS - Fakulteta za strojništvo
UDK: 004.925:007.52
COBISS: 116514307 Povezava se bo odprla v novem oknu
ISSN: 0020-7403
Št. ogledov: 77
Št. prenosov: 41
Ocena: 0 (0 glasov)
Metapodatki: JSON JSON-RDF JSON-LD TURTLE N-TRIPLES XML RDFA MICRODATA DC-XML DC-RDF RDF

Ostali podatki

Sekundarni jezik: Slovenski jezik
Sekundarne ključne besede: dielektrični aktuatorji;dinamično delovanje;karakterizacija prostega pomika;karakterizacija blokirane sile;pametne strukture;
Vrsta dela (COBISS): Članek v reviji
Strani: str. 1-14
Zvezek: ǂVol. ǂ230
Čas izdaje: Sep. 2022
DOI: 10.1016/j.ijmecsci.2022.107555
ID: 16006731
Priporočena dela:
, diplomsko delo Visokošolskega strokovnega študijskega programa I. stopnje Strojništvo